Institute of Eco-environmental Research, School of Environmental and Natural Resources, Zhejiang University of Science and Technology, Hangzhou, 310023, China.
College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310058, China.
Environ Sci Pollut Res Int. 2021 Mar;28(10):12677-12685. doi: 10.1007/s11356-020-11215-y. Epub 2020 Oct 21.
Little attention has been paid to the combined effects of arbuscular mycorrhizae (AM) fungus and composted manure on heavy metal bioavailability and its uptake by plants grown in heavy metal-contaminated soils from electronic-waste (e-waste) recycling sites. A greenhouse pot experiment was conducted to investigate the effects of AM fungus, composted pig manure (CM) and AM fungus + CM (ACM) on the growth of ryegrass and uptake of Cd and Zn in the soil collected from an e-waste recycling site. The calcium chloride (CaCl) and Tessier sequential extraction procedure were adopted to evaluate the bioavailability and chemical speciation of Cd and Zn in the soil. Results showed that the application of CM and ACM significantly increased the pH but decreased the CaCl-extractable Cd and Zn concentrations in the rhizosphere and bulk soils. ACM treatment significantly shifted Cd from exchangeable fraction to other more stable fractions, and transformed the exchangeable Zn fraction to the carbonate-bound and reducible iron and manganese-bound fractions. Furthermore, the application of ACM can enhance the growth of plant shoots, and decrease the uptake of Cd and Zn in the ryegrass plants. This work suggests that AM fungus in combination with CM amendment may be a potential method for not only remediation of soil Cd and Zn pollution, but also reduction of Cd and Zn uptake by ryegrass grown in the soil from e-waste recycling sites.
人们对丛枝菌根(AM)真菌和堆肥对受电子废物(e-waste)回收场污染土壤中重金属生物有效性及其植物吸收的综合影响关注较少。本研究采用温室盆栽试验,研究了 AM 真菌、堆肥猪粪(CM)和 AM 真菌+堆肥(ACM)对从电子废物回收场采集的土壤中黑麦草生长和 Cd、Zn 吸收的影响。采用氯化钙(CaCl)和 Tessier 连续提取程序来评估土壤中 Cd 和 Zn 的生物有效性和化学形态。结果表明,CM 和 ACM 的施用显著增加了 pH 值,但降低了根际和全土中 CaCl 可提取的 Cd 和 Zn 浓度。ACM 处理显著将 Cd 从可交换态转移到其他更稳定的形态,将可交换态 Zn 转化为碳酸盐结合态、可还原铁锰结合态。此外,ACM 的施用可以促进植物地上部分的生长,并减少黑麦草对土壤中 Cd 和 Zn 的吸收。这项工作表明,AM 真菌与堆肥改良相结合可能是一种潜在的方法,不仅可以修复土壤 Cd 和 Zn 污染,还可以减少在电子废物回收场土壤中生长的黑麦草对 Cd 和 Zn 的吸收。